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I supervise computational projects in electron microscopy imaging for investigating materials at atomic resolution. Some projects centre on analysing experimental data acquired by experimental
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will have the opportunity to interact with gravitational-wave researchers throughout Australia and around the world. Students in my group use data from the Laser Interferometer Gravitational-wave
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quantitative discipline, demonstrated research experience, and strong academic results. For full information on scholarship eligibility, please click here . For general information on applications and commencing
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are supported by quantum mechanical theoretical formalisms. Our fundamental findings yield promise for future applications in electronics, optoelectronics, spintronics, information processing and storage, sensing
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information that is encoded in the x-ray wavefield as it passes through the sample. My research aims to tap into the wavefield phase to reveal weakly-attenuating objects like the lungs that are almost invisible
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fields and control systems. In addition to this, simulations of electron spins and subsequent data analysis are also an important aspect of our work. "Wide-field quantum microscopy of exotic materials
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events with the GOTO telescope network. Projects focussing on thermonuclear bursts will involve analysis of new and archival data from satellite-based X-ray telescopes, and running numerical models
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pattern of fundamental particles and forces emerged, using information carried by gravitational waves from the earliest moments of the Universe. To this end, I collaborate with the Global And Modular BSM
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awardees) See details Bachelor of Applied Data Science Advanced (Honours) Ruby I'm more flexible and reassured about my financial situation with a scholarship. It has also given me the opportunity